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首页> 外文期刊>IEEE Transactions on Control Systems Technology >Antiwindup Input–Output Linearization Strategy for the Control of a Multistage Continuous Fermenter With Input Constraints
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Antiwindup Input–Output Linearization Strategy for the Control of a Multistage Continuous Fermenter With Input Constraints

机译:防延迟输入 - 输出线性化策略,用于控制多级连续发酵罐,输入约束

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摘要

This paper deals with the control of a multistage continuous fermenter (MSCF) used for the study of wine fermentation. The control design is facing three main difficulties: 1) system nonlinearity; 2) lack of online measurement of the controlled variable (sugar concentration); and 3) positive constraints on the control inputs (inlet flow rates of each tank) coming from the cascade structure of the system. A control strategy has been proposed, which accounts for these specificities. It is based on an input-output linearization control law coupled with an antiwindup technique and a state observer (the Kalman filter). The strategy has been tested and validated first on numerical simulations and then applied to the real process. The experiments gave satisfactory results that open up new perspectives on the use of the MSCF.
机译:本文涉及用于研究葡萄酒发酵的多级连续发酵罐(MSCF)的控制。控制设计面临三个主要困难:1)系统非线性; 2)缺乏在线测量受控变量(糖浓度); 3)来自系统级联结构的控制输入(每个罐的入口流量)的正约束。提出了一种控制策略,占这些特殊性的账户。它基于与防延迟技术和状态观察者(卡尔曼滤波器)耦合的输入输出线性化控制定律。该策略首先在数值模拟上进行了测试和验证,然后应用于实际过程。实验使结果令人满意地开辟了MSCF的使用新的视角。

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